WO2020224680A2 - 一种玻璃搬运装置 - Google Patents

一种玻璃搬运装置 Download PDF

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Publication number
WO2020224680A2
WO2020224680A2 PCT/CN2020/105948 CN2020105948W WO2020224680A2 WO 2020224680 A2 WO2020224680 A2 WO 2020224680A2 CN 2020105948 W CN2020105948 W CN 2020105948W WO 2020224680 A2 WO2020224680 A2 WO 2020224680A2
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WO
WIPO (PCT)
Prior art keywords
glass
adsorption
plate
suction
handling device
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PCT/CN2020/105948
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English (en)
French (fr)
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WO2020224680A3 (zh
Inventor
王永超
Original Assignee
苏州贝基电子科技有限公司
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Application filed by 苏州贝基电子科技有限公司 filed Critical 苏州贝基电子科技有限公司
Priority to JP2020600147U priority Critical patent/JP3232655U/ja
Priority to DE212020000206.1U priority patent/DE212020000206U1/de
Publication of WO2020224680A2 publication Critical patent/WO2020224680A2/zh
Publication of WO2020224680A3 publication Critical patent/WO2020224680A3/zh

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    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03BMANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
    • C03B33/00Severing cooled glass
    • C03B33/02Cutting or splitting sheet glass or ribbons; Apparatus or machines therefor
    • C03B33/023Cutting or splitting sheet glass or ribbons; Apparatus or machines therefor the sheet or ribbon being in a horizontal position
    • C03B33/03Glass cutting tables; Apparatus for transporting or handling sheet glass during the cutting or breaking operations
    • CCHEMISTRY; METALLURGY
    • C03GLASS; MINERAL OR SLAG WOOL
    • C03BMANUFACTURE, SHAPING, OR SUPPLEMENTARY PROCESSES
    • C03B33/00Severing cooled glass
    • C03B33/02Cutting or splitting sheet glass or ribbons; Apparatus or machines therefor
    • C03B33/023Cutting or splitting sheet glass or ribbons; Apparatus or machines therefor the sheet or ribbon being in a horizontal position
    • C03B33/027Scoring tool holders; Driving mechanisms therefor

Definitions

  • the utility model relates to the field of glass processing equipment, in particular to a glass conveying device.
  • Glass is an amorphous inorganic non-metallic material, which is generally made from a variety of inorganic minerals as the main raw material and a small amount of auxiliary raw materials. Its main components are silicon dioxide and other oxides. It can be divided into quartz glass, high-pressure glass, anti-ultraviolet glass and explosion-proof glass, which are widely used in construction, daily use, art, medical treatment, chemistry, electronics and instrumentation. At the same time, the glass needs to be transported after the production is completed. Transfer, and the traditional handling device has relatively large overall limitations, unable to perform stable limit processing on the glass, the overall handling risk is greater, and it is impossible to adjust the size of the glass limit according to actual use requirements, so the handling is relatively large When glass, the stability of the glass cannot be guaranteed.
  • the existing technology has the following shortcomings: the traditional handling device has relatively large overall use limitations, cannot perform stable limit processing on the glass, the overall handling risk is relatively large, and the size of the glass limit cannot be adjusted according to actual use requirements. When handling large glass, the stability of the glass cannot be guaranteed, and the glass is easily dropped off, which reduces the overall use range of the device.
  • the purpose of the utility model is to provide a glass handling device to solve the problem that the traditional handling device has relatively large overall use limitations, cannot perform stable limiting treatment on the glass, and the overall handling risk is relatively large, and the overall The size of the limit is adjusted, so when handling large glass, the stability of the glass cannot be guaranteed.
  • a glass handling device comprising: a car body, a supporting plate, four sets of adjustment components and four sets of suction components, the supporting plate is matched and installed on the top of the car body.
  • rolling wheels are installed at the four corners of the bottom end of the vehicle body, a rectangular platform is installed on the upper surface of the supporting plate, four groups of the adjustment components are matched and installed around the rectangular platform, and four groups of the suction components are matched and installed on the The top of the tail of the four sets of adjustment components.
  • the tail ends of the four groups of adjustment components are attached and fixed to the rectangular table, and the four groups of adjustment components are distributed in a cross shape.
  • the entire rectangular platform has a cube structure, and the entire rectangular platform is formed by pressing steel.
  • the four groups of the adjustment components all include a placing frame, a sliding plate, a guide plate, and a telescopic rod.
  • the placing frame is installed around the rectangular table, the sliding plate is slidably installed inside the placing frame, and the guide plate passes through the placing frame.
  • the side wall is installed, and the tail end of the guide plate is connected with the sliding plate.
  • the telescopic rod is installed between the placing frame and the sliding plate.
  • a push rod is installed on the top side of the vehicle body, a counterweight is installed on one side of the vehicle body, and a protective pad is sheathed on the outside of the push rod to ensure user comfort.
  • the sliding plate is slidingly attached to the inner wall of the placing frame, and the inner wall of the placing frame is provided with a guide rail matching the sliding plate.
  • the tail end of the telescopic rod is locked and fixed with the inner wall of the placing frame by bolts, and the output end of the telescopic rod is connected with the side wall of the sliding plate.
  • the four groups of the adsorption components all include a positioning column, an adsorption frame, an adsorption chamber, an adsorption plate, a conveying pipe and an air pump.
  • the positioning column is matched and installed at the top of the tail of the guide plate, and the adsorption frame is installed at the top of the positioning column.
  • the adsorption chamber is embedded at the top end of the adsorption frame, the adsorption plate is installed at the top end of the adsorption chamber, the delivery tube is mounted at the bottom end of the adsorption chamber, and the tail end of the delivery tube communicates with the outside of the adsorption frame, the air pump Installed at the end of the conveying pipe, using the suction plate to form a negative pressure adsorption state, and then the glass can be adsorbed and fixed.
  • the four sets of adsorption components can be used to match the four corners of the glass to limit and fix the glass, which strengthens the overall limit. stability.
  • a plurality of groups of suction through holes are uniformly opened on the suction plate, and a rubber pad is installed on the surface of the suction plate.
  • the conveying pipe has a cylindrical structure as a whole, and the inner wall of the conveying pipe is smoothed.
  • the utility model is equipped with four sets of adsorption components, and the gas inside the adsorption chamber is drawn out by the conveying pipe to drive the formation of a negative pressure effect inside the adsorption chamber, and at the same time, a negative pressure adsorption state is formed on the adsorption plate, and then the glass can be adsorbed
  • Fixed, four sets of adsorption components can be used to match the four corners of the glass to limit and fix the glass, strengthen the good stability of the overall limit, and avoid the insufficiency of the traditional glass handling equipment to limit the glass stably.
  • the utility model is equipped with four sets of adjustment components.
  • the guide plates inside the four sets of adjustment frames are adjusted according to actual use needs.
  • the overall adaptability is wide and can be adjusted for different
  • the shape and size of the glass is reinforced and transported, which ensures the stability of the overall adjustment work, increases the overall working range, improves the overall transport effect, avoids the traditional shortcomings of requiring more workers to carry out cooperative transport, and improves the glass processing efficiency .
  • Figure 1 is a schematic diagram of the overall structure of the utility model
  • Figure 2 is a schematic diagram of the structure of the regulating assembly of the present invention.
  • Figure 3 is a top view of the adjustment assembly of the present invention.
  • Figure 4 is a schematic diagram of the structure of the suction assembly of the present invention.
  • a glass handling device comprising: a car body 1, a supporting plate 2, four sets of adjustment components and four sets of adsorption components, the supporting plate 2 It is matched and installed on the top side of the car body 1, the four corners of the bottom end of the car body 1 are equipped with rolling wheels 3, the upper surface of the supporting plate 2 is installed with a rectangular table 4, and the four groups of the adjustment components are matched and installed in a rectangle Around the table 4, four groups of the adsorption components are matched and installed on the top of the tail of the four groups of adjustment components.
  • the tail ends of the four groups of adjustment components are attached and fixed to the rectangular table 4, and the four groups of adjustment components are distributed in a cross shape, which ensures the stability of the position limit;
  • the entire rectangular table 4 has a cube structure, and the entire rectangular table 4 is formed by pressing steel;
  • the four groups of the adjustment components all include a placing frame 5, a sliding plate 6, a guide plate 7, and a telescopic rod 8.
  • the placing frame 5 is installed around the rectangular table 4, and the sliding plate 6 is slidably installed inside the placing frame 5.
  • the guide plate 7 is installed through the side wall of the placing frame 5, and the tail end of the guide plate 7 is connected to the sliding plate 6.
  • the telescopic rod 8 is installed between the placing frame 5 and the sliding plate 6.
  • a push rod 9 is installed on the top side of the vehicle body 1, a counterweight is installed on one side of the vehicle body 1, and a protective pad is sheathed on the outside of the push rod 9 to ensure user comfort;
  • the sliding plate 6 is slidably fitted to the inner wall of the placing frame 5, and the inner wall of the placing frame 5 is provided with a guide rail matching the sliding plate 6;
  • the tail end of the telescopic rod 8 is locked and fixed with the inner wall of the placing frame 5 by bolts, and the output end of the telescopic rod 8 is connected with the side wall of the sliding plate 6;
  • the four groups of the adsorption components all include a positioning column 10, an adsorption frame 11, an adsorption chamber 12, an adsorption plate 13, a conveying pipe 14 and an air pump 15.
  • the positioning column 10 is matched and installed on the top end of the guide plate 7.
  • the frame 11 is installed at the top end of the positioning column 10, the adsorption chamber 12 is embedded at the top end of the adsorption frame 11, the adsorption plate 13 is installed at the top end of the adsorption chamber 12, the delivery pipe 14 is installed at the bottom end of the adsorption chamber 12, and
  • the tail end of the delivery pipe 14 is in communication with the outside of the adsorption frame 11.
  • the air pump 15 is installed at the end of the delivery pipe 14.
  • the delivery pipe 14 is used to extract the gas inside the adsorption chamber 12 to drive the adsorption chamber 12 to form a negative pressure effect, and at the same time
  • the suction plate 13 forms a negative pressure adsorption state, which can then adsorb and fix the glass.
  • the four sets of adsorption components can be used to match the four corners of the glass to limit and fix the glass, which enhances the good stability of the overall limit and avoids the traditional glass handling The equipment cannot stably limit the glass position;
  • a plurality of sets of suction through holes are uniformly opened on the suction plate 13, and a rubber pad is installed on the upper surface of the suction plate 13.
  • the conveying pipe 14 has a cylindrical structure as a whole, and the inner wall of the conveying pipe 14 is smoothed.
  • the staff can use the car body 1 to stably carry and transfer the glass on the supporting plate 2.
  • the overall operation is convenient, and can be matched to carry and transfer the glass of different sizes.
  • There are four groups For the adsorption assembly, first place the glass above the supporting plate 2 and attach it to the adsorption plate 13, then start the air pump 15, and use the conveying pipe 14 to pump out the gas inside the adsorption chamber 12, driving the adsorption chamber 12 to form a negative pressure effect, and at the same time A negative pressure adsorption state is formed on the plate 13, and then the glass can be adsorbed and fixed.
  • the four sets of adsorption components can be used to match the four corners of the glass to limit and fix, strengthen the good stability of the overall limit, and ensure the glass in the moving Stabilizing effect, avoiding the insufficiency of traditional glass handling equipment to limit the glass position stably, and improving the overall handling efficiency.
  • the overall adaptability is wide, and it can be reinforced and transported for different shapes and sizes of glass. In specific use, pull the guide plate 7 to ensure the guide plate under the guidance of the sliding plate 6.
  • the stability of 7 avoids the deviation of the guide plate 7 when it moves, and at the same time, the telescopic rod 8 is used to extend the inside of the placing frame 5, and then the movement of the guide plate 7 can be guided and positioned, ensuring the stability of the overall adjustment work , Enlarge the overall work range, improve the overall handling effect, avoid the traditional shortcomings of requiring more workers to carry out cooperative handling, and improve the glass processing efficiency.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Organic Chemistry (AREA)
  • Re-Forming, After-Treatment, Cutting And Transporting Of Glass Products (AREA)
  • Automobile Manufacture Line, Endless Track Vehicle, Trailer (AREA)
  • Handcart (AREA)

Abstract

本实用新型公开了一种玻璃搬运装置,包括:车体、承托板、四组调节组件以及四组吸附组件,所述承托板匹配安装在车体顶端一侧,所述车体底端四角处均安装有滚动轮,所述承托板上表面安装有矩形台,四组所述调节组件匹配安装在矩形台四周,四组所述吸附组件匹配安装在四组调节组件尾部顶端。本实用新型利用四组吸附组件的配合下,可稳定的对玻璃进行加固处理,当需要对较大的玻璃进行限位时,根据实际使用需要对四组调节框内部的导向板进行调节,整体适应性广,可针对不同形状尺寸的玻璃进行加固搬运,增大了整体工作范围,提升了整体搬运效果,规避了传统需要较多工作人员进行协同搬运的不足,提升了玻璃的加工效率。

Description

一种玻璃搬运装置 技术领域
本实用新型涉及玻璃加工设备领域,具体为一种玻璃搬运装置。
背景技术
玻璃是非晶无机非金属材料,一般是用多种无机矿物为主要原料,另外加入少量辅助原料制成的。它的主要成分为二氧化硅和其他氧化物。可分为石英玻璃、耐高压玻璃、防紫外线玻璃和防爆玻璃等,广泛用于建筑、日用、艺术、医疗、化学、电子和仪表等领域,同时玻璃在生产完成后,需要对玻璃进行搬运转移,且传统的搬运装置整体使用局限性较大,无法对玻璃进行稳定的限位处理,整体搬运风险较大,且无法根据实际使用需求对玻璃限位的尺寸进行调节,因此在搬运较大玻璃时,无法保证玻璃的稳定性。
现有技术有以下不足:传统的搬运装置整体使用局限性较大,无法对玻璃进行稳定的限位处理,整体搬运风险较大,且无法根据实际使用需求对玻璃限位的尺寸进行调节,因此在搬运较大玻璃时,无法保证玻璃的稳定性,极易发生玻璃脱落的状况,降低了装置整体使用范围。
实用新型内容
本实用新型的目的在于提供一种玻璃搬运装置,以解决传统的搬运装置整体使用局限性较大,无法对玻璃进行稳定的限位处理,整体搬运风险较大,且无法根据实际使用需求对整体限位的尺寸进行调节,因此在搬运较大玻璃时,无法保证玻璃的稳定性等问题。
为实现上述目的,本实用新型提供如下技术方案:一种玻璃搬运装置,包括:车体、承托板、四组调节组件以及四组吸附组件,所述承托板匹配安装在车体顶端一侧,所述车体底端四角处均安装有滚动轮,所述承托板上表面安装有矩形台,四组所述调节组件匹配安装在矩形台四周,四组所述吸附组件匹配安装在四组调节组件尾部顶端。
优选的,四组所述调节组件尾端与矩形台贴合固定,且四组所述调节组件呈十字形分布。
优选的,所述矩形台整体为正方体结构,且所述矩形台整体采用钢材压制而成。
优选的,四组所述调节组件均包括放置框、滑板、导向板以及伸缩杆,所述放置框安装在矩形台四周,所述滑板滑动安装在放置框内部,所述导向板穿过放置框侧壁安装,且所述导向板尾端与滑板连接,所述伸缩杆安装在放置框、滑板之间,整体适应性广,可针对不同形状尺寸的玻璃进行加固搬运,保证了整体调节工作的稳定进行,增大了整体工作范围,提升了整体搬运效果。
优选的,所述车体顶端一侧安装有推杆,所述车体一侧安装有配重块,且所述推杆外部套设有防护垫,保证了使用者使用舒适度。
优选的,所述滑板与放置框内壁滑动贴合,且所述放置框内壁开设有与滑板匹配的导轨。
优选的,所述伸缩杆尾端通过螺栓与放置框内壁锁合固定,所述伸缩杆的输出端与滑板侧壁连接。
优选的,四组所述吸附组件均包括定位柱、吸附框、吸附腔、吸附板、输送管以及气泵,所述定位柱匹配安装在导向板尾部顶端,所述吸附框安装在定位柱顶端,所述吸附腔嵌设在吸附框内部顶端,所述吸附板安装在吸附腔内部顶端,所述输送管安装在吸附腔底端,且所述输送管尾端与吸附框外部连通,所述气泵安装在输送管端处,利用在吸附板上形成负压吸附状态,进而可对玻璃进行吸附固定,利用四组吸附组件可对玻璃四角处进行匹配的限位固定,加强了整体限位的良好稳定性。
优选的,所述吸附板上均匀开设有若干组吸附通孔,且所述吸附板上表面安装有橡胶垫。
优选的,所述输送管整体呈圆柱形结构,且所述输送管内壁经过光滑处理。
具备以下有益效果:
(1)本实用新型通过设有四组吸附组件,利用输送管将吸附腔内部气体抽出,驱使吸附腔内部形成负压效果,同时在吸附板上形成负压吸附状态,进而可对玻璃进行吸附固定,利用四组吸附组件可对玻璃四角处进行匹配的限位固定,加强了整体限位的良好稳定性,规避了传统玻璃搬运设备无法稳定的对玻璃进行限位的不足。
(2)本实用新型通过设有四组调节组件,当需要对较大的玻璃进行限位时,根据实际使用需要对四组调节框内部的导向板进行调节,整体适应性广,可针对不同形状尺寸的玻璃进行加固搬运,保证了整体调节工作的稳定进行,增大了整体工作范围,提升了整体搬运效果,规避了传统需要较多工作人员进行协同搬运的不足,提升了玻璃的加工效率。
附图说明
图1为本实用新型的整体的结构示意图;
图2为本实用新型的调节组件结构示意图;
图3为本实用新型的调节组件的俯视图;
图4为本实用新型的吸附组件结构示意图。
图中:1、车体;2、承托板;3、滚动轮;4、矩形台;5、放置框;6、滑板;7、导向板;8、伸缩杆;9、推杆;10、定位柱;11、吸附框;12、吸附腔;13、吸附板;14、输送管;15、气泵。
具体实施方式
如图1-4所示,本实用新型提供一种技术方案:一种玻璃搬运装置,包括:车体1、承托板2、四组调节组件以及四组吸附组件,所述承托板2匹配安装在车体1顶端一侧,所述车体1底端四角处均安装有滚动轮3,所述承托 板2上表面安装有矩形台4,四组所述调节组件匹配安装在矩形台4四周,四组所述吸附组件匹配安装在四组调节组件尾部顶端。
进一步,四组所述调节组件尾端与矩形台4贴合固定,且四组所述调节组件呈十字形分布,保证了限位的稳定性;
进一步,所述矩形台4整体为正方体结构,且所述矩形台4整体采用钢材压制而成;
进一步,四组所述调节组件均包括放置框5、滑板6、导向板7以及伸缩杆8,所述放置框5安装在矩形台4四周,所述滑板6滑动安装在放置框5内部,所述导向板7穿过放置框5侧壁安装,且所述导向板7尾端与滑板6连接,所述伸缩杆8安装在放置框5、滑板6之间,当需要对较大的玻璃进行限位时,根据实际使用需要对四组调节框内部的导向板7进行调节,整体适应性广,可针对不同形状尺寸的玻璃进行加固搬运,保证了整体调节工作的稳定进行,增大了整体工作范围,提升了整体搬运效果,规避了传统需要较多工作人员进行协同搬运的不足,提升了玻璃的加工效率;
进一步,所述车体1顶端一侧安装有推杆9,所述车体1一侧安装有配重块,且所述推杆9外部套设有防护垫,保证了使用者使用舒适度;
进一步,所述滑板6与放置框5内壁滑动贴合,且所述放置框5内壁开设有与滑板6匹配的导轨;
进一步,所述伸缩杆8尾端通过螺栓与放置框5内壁锁合固定,所述伸缩杆8的输出端与滑板6侧壁连接;
进一步,四组所述吸附组件均包括定位柱10、吸附框11、吸附腔12、吸附板13、输送管14以及气泵15,所述定位柱10匹配安装在导向板7尾部顶端,所述吸附框11安装在定位柱10顶端,所述吸附腔12嵌设在吸附框11内部顶端,所述吸附板13安装在吸附腔12内部顶端,所述输送管14安装在吸附腔12底端,且所述输送管14尾端与吸附框11外部连通,所述气泵15 安装在输送管14端处,利用输送管14将吸附腔12内部气体抽出,驱使吸附腔12内部形成负压效果,同时在吸附板13上形成负压吸附状态,进而可对玻璃进行吸附固定,利用四组吸附组件可对玻璃四角处进行匹配的限位固定,加强了整体限位的良好稳定性,规避了传统玻璃搬运设备无法稳定的对玻璃进行限位的不足;
进一步,所述吸附板13上均匀开设有若干组吸附通孔,且所述吸附板13上表面安装有橡胶垫。
进一步,所述输送管14整体呈圆柱形结构,且所述输送管14内壁经过光滑处理。
工作原理:在使用时,工作人员利用车体1可稳定的对承托板2上的玻璃进行搬运转移,同时整体操作便捷,可匹配的对不同尺寸的玻璃进行搬运转移,通过设有四组吸附组件,首先将玻璃放置在承托板2上方与吸附板13贴合,之后启动气泵15,利用输送管14将吸附腔12内部气体抽出,驱使吸附腔12内部形成负压效果,同时在吸附板13上形成负压吸附状态,进而可对玻璃进行吸附固定,利用四组吸附组件可对玻璃四角处进行匹配的限位固定,加强了整体限位的良好稳定性,保证玻璃在移动中的稳定效果,规避了传统玻璃搬运设备无法稳定的对玻璃进行限位的不足,提升了整体搬运效率,同时通过设有四组调节组件,当需要对较大的玻璃进行限位时,根据实际使用需要对四组调节框内部的导向板7进行调节,整体适应性广,可针对不同形状尺寸的玻璃进行加固搬运,具体使用时,拉动导向板7,在滑板6的导向下,保证了导向板7的稳定性,避免导向板7在移动时发生偏移,同时利用伸缩杆8在放置框5内部延伸,继而可对导向板7的移动进行到导向定位处理,保证了整体调节工作的稳定进行,增大了整体工作范围,提升了整体搬运效果,规避了传统需要较多工作人员进行协同搬运的不足,提升了玻璃的加工效率。

Claims (10)

  1. 一种玻璃搬运装置,其特征在于,包括:车体(1)、承托板(2)、四组调节组件以及四组吸附组件,所述承托板(2)匹配安装在车体(1)顶端一侧,所述车体(1)底端四角处均安装有滚动轮(3),所述承托板(2)上表面安装有矩形台(4),四组所述调节组件匹配安装在矩形台(4)四周,四组所述吸附组件匹配安装在四组调节组件尾部顶端。
  2. 根据权利要求1所述的一种玻璃搬运装置,其特征在于:四组所述调节组件尾端与矩形台(4)贴合固定,且四组所述调节组件呈十字形分布。
  3. 根据权利要求1所述的一种玻璃搬运装置,其特征在于:所述矩形台(4)整体为正方体结构,且所述矩形台(4)整体采用钢材压制而成。
  4. 根据权利要求1所述的一种玻璃搬运装置,其特征在于:四组所述调节组件均包括放置框(5)、滑板(6)、导向板(7)以及伸缩杆(8),所述放置框(5)安装在矩形台(4)四周,所述滑板(6)滑动安装在放置框(5)内部,所述导向板(7)穿过放置框(5)侧壁安装,且所述导向板(7)尾端与滑板(6)连接,所述伸缩杆(8)安装在放置框(5)、滑板(6)之间。
  5. 根据权利要求1所述的一种玻璃搬运装置,其特征在于:所述车体(1)顶端一侧安装有推杆(9),所述车体(1)一侧安装有配重块,且所述推杆(9)外部套设有防护垫。
  6. 根据权利要求4所述的一种玻璃搬运装置,其特征在于:所述滑板(6)与放置框(5)内壁滑动贴合,且所述放置框(5)内壁开设有与滑板(6)匹配的导轨。
  7. 根据权利要求4所述的一种玻璃搬运装置,其特征在于:所述伸缩杆(8)尾端通过螺栓与放置框(5)内壁锁合固定,所述伸缩杆(8)的输出端与滑板(6)侧壁连接。
  8. 根据权利要求1所述的一种玻璃搬运装置,其特征在于:四组所述吸附组件均包括定位柱(10)、吸附框(11)、吸附腔(12)、吸附板(13)、 输送管(14)以及气泵(15),所述定位柱(10)匹配安装在导向板(7)尾部顶端,所述吸附框(11)安装在定位柱(10)顶端,所述吸附腔(12)嵌设在吸附框(11)内部顶端,所述吸附板(13)安装在吸附腔(12)内部顶端,所述输送管(14)安装在吸附腔(12)底端,且所述输送管(14)尾端与吸附框(11)外部连通,所述气泵(15)安装在输送管(14)端处。
  9. 根据权利要求8所述的一种玻璃搬运装置,其特征在于:所述吸附板(13)上均匀开设有若干组吸附通孔,且所述吸附板(13)上表面安装有橡胶垫。
  10. 根据权利要求8所述的一种玻璃搬运装置,其特征在于:所述输送管(14)整体呈圆柱形结构,且所述输送管(14)内壁经过光滑处理。
PCT/CN2020/105948 2020-07-29 2020-07-30 一种玻璃搬运装置 WO2020224680A2 (zh)

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